1.Effect of dexamethasone combined with oxybuprocaine hydrochloride gel on prevention of postoperative sore throat after nasal endoscopy.
Cheng Mei SHI ; Xue Dong WANG ; You Kun LIU ; Ying DENG ; Xiang Yang GUO
Journal of Peking University(Health Sciences) 2022;54(2):289-293
OBJECTIVE:
To explore the effectiveness and feasibility of dexamethasone combined with oxybuprocaine hydrochloride gel on the prevention of postoperative sore throat after nasal endoscopy.
METHODS:
In the study, 60 patients with American Society of Anesthesiologist (ASA) physical statuses Ⅰ to Ⅱ, aged 18 to 72 years, scheduled for elective nasal endoscope surgery under general anesthesia requiring endotracheal intubation were randomly divided into dexamethasone combined with oxybuprocaine hydrochloride gel group (G group, n=30) and control group (C group, n=30). The patients in the G group received dexamethasone 0.1 mg/kg before induction and the oxybuprocaine gel was applied to the endotracheal catheter cuff and the front end within 15 cm. The patients in the C group received the same dose of saline and the saline was applied to the endotracheal catheter cuff and the front end within 15 cm. Then, all the patients in the two groups received the same induction and anesthesia maintainance. The operation time, anesthesia time, emergence time, extubation time and departure time were recorded. The intraoperative infusion volume, blood loss volume, propofol, remifentanil, rocuronium dosage were also recorded. The adverse reactions such as intraoperative hypotension, bradycardia and postoperative agitation were recorded. The postoperative sore throat score was recorded at the end of operation and 4 h, 8 h, 12 h, and 24 h after operation.
RESULTS:
Compared with the C group, the emergence time [(8.4±3.9) min vs. (10.8±4.7) min], extubation time [(8.8±3.7) min vs. (11.9±4.8) min], and departure time [(20.0±5.3) min vs. (23.0±5.8) min] were significantly shorter, and the propofol dosage [(11.8±1.8) mg/kg vs. (15.9±4.6) mg/kg], remifentanil dosage [(10.9±4.7) μg/kg vs. (14.1±3.6) μg/kg] were significantly less in the G group, and there was no difference of rocuronium dosage in the two groups. Compared with the C group the incidence of intraoperative hypotension [10%(3/30) vs. 30%(9/30)], bradycardia [16.7%(5/30) vs. 20%(6/30)] and postoperative agitation [6.7%(2/30) vs. 23.3%(7/30)] were significantly lower in the C group. The postoperative sore throat score at the end of operation, 4 h, 8 h, 12 h and 24 h after operation in the G group were significantly lower than in the C group respectively [0 (0, 1) vs. 1 (1, 2), 0 (0, 0) vs. 1 (1, 2), 0 (0, 0) vs. 1 (1, 2), 0 (0, 0) vs. 1 (0.75, 1), 0 (0, 0) vs. 1 (0, 1)].
CONCLUSION
Dexamethasone combined with oxybuprocaine hydrochloride gel was effective and feasible on the prevention of postoperative sore throat after nasal endoscopy.
Adolescent
;
Adult
;
Aged
;
Bradycardia/drug therapy*
;
Dexamethasone/therapeutic use*
;
Endoscopy/adverse effects*
;
Humans
;
Hypotension/drug therapy*
;
Intubation, Intratracheal/adverse effects*
;
Middle Aged
;
Pain/drug therapy*
;
Pharyngitis/prevention & control*
;
Postoperative Complications/prevention & control*
;
Procaine/analogs & derivatives*
;
Propofol
;
Remifentanil
;
Rocuronium
;
Young Adult
2.Effect of operative trauma and multiple propofol anesthesia on neurodevelopment and cognitive function in developmental rats.
Yang LI ; Weiguang LI ; Zeguo FENG ; Jie SONG ; Chenggang ZHANG ; Lianjun HUANG ; Yanping SONG
Journal of Zhejiang University. Medical sciences 2021;50(3):290-297
To investigate the effect of multiple propofol anesthesia and operative trauma on neuroinflammation and cognitive function in development rats and its mechanism. A total of 104 13-day-old neonatal Sprague-Dawley rats were randomly divided into 4 groups with 26 rats in each group: control group was treated with saline q.d for propofol group was treated with propofol q.d for surgery group received abdominal surgery under local anesthesia and then treated with saline q.d for surgery with propofol group received propofol anesthesia plus abdominal surgery under local anesthesia with ropivacaine at d1, then treated with propofol q.d for At d2 of experiment, 13 rats from each group were sacrificed and brain tissue samples were taken, the concentration of TNF-α in hippocampus was detected with ELISA, the expression of caspase-3 and c-fos in hippocampal tissue was determined with immunohistochemical method, the number of apoptotic neurons in hippocampus was examined with TUNEL assay. Morris water maze test was used to examine the cognitive function of the rest rats at the age of 60 d, and the TNF-α concentration, caspase-3, c-fos expressions and the number of apoptotic neurons in hippocampus were also detected. Compared with control group, TNF-α concentration, caspase-3, c-fos expression and the neuroapoptosis in hippocampus increased significantly in other three groups (all <0.05). Compared with surgery group, propofol group and surgery with propofol group showed increased TNF-α level, caspase-3 and c-fos expressions and apoptotic cell numbers (all <0.05), but there was no significant difference between last two groups (all >0.05). Morris water maze test showed that there were no significant differences in swimming speed, escape latency, target quadrant residence time and crossing times among groups (all >0.05). TNF-α level, expressions of caspase-3 and c-fos and apoptotic cell numbers in hippocampus had no significant differences among the 4 adult rats groups (all >0.05). Abdominal surgery and multiple propofol treatment can induce neuroinflammation and neuroapoptosis in hippocampus of neonatal rats, however, which may not cause adverse effects on neurodevelopment and cognitive function when they grown up.
Anesthesia
;
Animals
;
Cognition
;
Hippocampus
;
Propofol/adverse effects*
;
Rats
;
Rats, Sprague-Dawley
3.Efficacy of different fluids preload on propofol injection pain: A randomized, controlled, double-blinded study.
Shi-ying YUAN ; Tian-yuan LUO ; Zhen LIU ; Yun LIN
Journal of Huazhong University of Science and Technology (Medical Sciences) 2016;36(2):249-253
Injection pain of propofol remains a common clinical problem. Previous studies demonstrated that propofol injection pain was alleviated by applying nitroglycerin ointment to the skin of injection site, which inspires us to test whether venous vasodilation induced by fluid preload could alleviate the pain. Different types or volumes of fluid preload were compared. 200 ASA I-II adult patients were randomly assigned to five groups of 40 each. A 20 G cannula was established on the dorsum or wrist of the hand. When fluid preload given with Plasma-Lyte A 100 mL (P100 group), 250 mL (P250 group), 500 mL (P500 group), 0.9% saline 500 mL (N500 group) or Gelofusine 500 mL (G500 group) was completed within 30 min, respectively, Propofol (0.5 mg/kg, 1%) was injected at a rate of 0.5 mL/s. A blind investigator assessed the pain using a four-point scale. Incidence of pain in P100, P250, and P500 groups was 87.5%, 57.5% and 35%, respectively (P<0.05). The median pain intensity score was significantly lower in P500 group than that in P250 and P100 groups (P<0.05 and P<0.01, respectively). Comparison of the effect of different types of solution preload indicated that the highest incidence of pain was in N500 group (62.5%) (N500 vs. P500, P=0.014; N500 vs. G500, P=0.007). The median pain intensity score in N500 group was higher than that in P500 group (P<0.05) and G500 group (P<0.05). There was no significant difference between P500 and G500 groups. It is suggested that Plasma-Lyte A or Gelofusine preload with 500 mL before propofol injection is effective in alleviating propofol-induced pain.
Adolescent
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Adult
;
Aged
;
Electrolytes
;
administration & dosage
;
therapeutic use
;
Female
;
Humans
;
Injections, Intravenous
;
adverse effects
;
methods
;
Male
;
Middle Aged
;
Pain
;
drug therapy
;
etiology
;
prevention & control
;
Plasma Substitutes
;
administration & dosage
;
therapeutic use
;
Polygeline
;
administration & dosage
;
therapeutic use
;
Propofol
;
administration & dosage
;
adverse effects
4.Effects of bispectral index monitoring as an adjunct to nurse-administered propofol combined sedation during colonoscopy: a randomized clinical trial.
Jun HEO ; Min Kyu JUNG ; Hyun Seok LEE ; Chang Min CHO ; Seong Woo JEON ; Sung Kook KIM ; Young Hoon JEON
The Korean Journal of Internal Medicine 2016;31(2):260-266
BACKGROUND/AIMS: The efficacy of bispectral index (BIS) monitoring during colonoscopic sedation is debated. We aimed to determine whether BIS monitoring was useful for propofol dose titration, and to evaluate differences in sedative administration between expert and inexperienced medical personnel during colonoscopy procedures that required moderate sedation. METHODS: Between February 2012 and August 2013, 280 consecutive patients scheduled to undergo a screening colonoscopy participated in this study and were randomly allocated to the expert or inexperienced endoscopist group. Each group was further divided into either a BIS or a modified Observer's Assessment of Alertness/Sedation Scale (MOAA/S) subgroup. Trained nurses administered combined propofol sedation and monitored sedation using either the BIS or MOAA/S scale. RESULTS: The mean BIS value throughout the procedure was 74.3 +/- 6.7 for all 141 patients in the BIS group. The mean total propofol dose administered in the BIS group was higher than that in the MOAA/S group, independently of the endoscopists' experience level (36.9 +/- 29.6 and 11.3 +/- 20.7, respectively; p < 0.001). The total dose of propofol administered was not significantly different between the inexperienced endoscopist group and the expert endoscopist group, both with and without the use of BIS (p = 0.430 and p = 0.640, respectively). CONCLUSIONS: Compared with monitoring using the MOAA/S score alone, BIS monitoring was not effective for titrating the dose of propofol during colonoscopy, irrespective of colonoscopist experience.
Adult
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Aged
;
Anesthetics, Intravenous/*administration & dosage/adverse effects
;
*Clinical Competence
;
*Colonoscopy
;
Conscious Sedation/adverse effects/*nursing
;
Consciousness/*drug effects
;
*Consciousness Monitors
;
Electroencephalography/*instrumentation/*nursing
;
Female
;
Humans
;
Male
;
Middle Aged
;
*Nurse Anesthetists
;
Predictive Value of Tests
;
Propofol/*administration & dosage/adverse effects
;
Prospective Studies
;
Republic of Korea
5.Revision of loop colostomy under regional anaesthesia and sedation.
Oriana NG ; Sze Ying THONG ; Claramae Shulyn CHIA ; Melissa Ching Ching TEO
Singapore medical journal 2015;56(5):e89-91
Patients presenting for emergency abdominal procedures often have medical issues that cause both general anaesthesia and central neuraxial blockade to pose significant risks. Regional anaesthetic techniques are often used adjunctively for abdominal procedures under general anaesthesia, but there is limited published data on procedures done under peripheral nerve or plexus blocks. We herein report the case of a patient with recent pulmonary embolism and supraventricular tachycardia who required colostomy refashioning. Ultrasonography-guided regional anaesthesia was administered using a combination of ilioinguinal-iliohypogastric, rectus sheath and transversus abdominis plane blocks. This was supplemented with propofol and dexmedetomidine sedation as well as intermittent fentanyl and ketamine boluses to cover for visceral stimulation. We discuss the anatomical rationale for the choice of blocks and compare the anaesthetic conduct with similar cases that were previously reported.
Abdominal Wall
;
surgery
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Aged
;
Anesthesia, Conduction
;
methods
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Anesthesia, General
;
adverse effects
;
Colostomy
;
adverse effects
;
methods
;
Conscious Sedation
;
methods
;
Dexmedetomidine
;
administration & dosage
;
Fentanyl
;
administration & dosage
;
Hemodynamics
;
Humans
;
Ketamine
;
administration & dosage
;
Laparoscopy
;
Male
;
Nerve Block
;
methods
;
Pain, Postoperative
;
Postoperative Period
;
Propofol
;
administration & dosage
;
Pulmonary Embolism
;
complications
;
Reoperation
;
methods
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Tachycardia, Supraventricular
;
complications
;
Ultrasonography, Interventional
6.Safety of Gastroenterologist-Guided Sedation with Propofol for Upper Gastrointestinal Therapeutic Endoscopy in Elderly Patients Compared with Younger Patients.
Masaya NONAKA ; Takuji GOTODA ; Chika KUSANO ; Masakatsu FUKUZAWA ; Takao ITOI ; Fuminori MORIYASU
Gut and Liver 2015;9(1):38-42
BACKGROUND/AIMS: Propofol sedation for elderly patients during time-consuming endoscopic procedures is controversial. Therefore, we investigated the safety of using propofol in elderly patients during upper gastrointestinal therapeutic endoscopy. METHODS: The medical records of 160 patients who underwent therapeutic endoscopic procedures under gastroenterologist-guided propofol sedation at a single institution were retrospectively reviewed. The subjects were divided into two groups: a younger group, patients <75 years old; and an elderly group, patients > or =75 years old. The two groups were compared with respect to the therapeutic regimen, circulatory dynamics, and presence/absence of discontinuation of propofol treatment. RESULTS: Although the number of patients with liver dysfunction was higher in the elderly group, there were no other significant differences in the baseline characteristics, including the American Society of Anesthesiologists classification, between the elderly and younger groups. The average maintenance rate of continuous propofol infusion was lower in the elderly patients. No statistically significant differences were found in the occurrence of adverse events between the elderly and younger groups. None of the patients returned to a resedated state after the initial recovery from sedation. CONCLUSIONS: Gastroenterologist-guided propofol sedation in elderly patients can be safely achieved in the same manner as that in younger patients, even for time-consuming upper gastrointestinal therapeutic endoscopic procedures.
Age Factors
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Aged
;
Aged, 80 and over
;
Conscious Sedation/adverse effects/*methods
;
*Endoscopy, Gastrointestinal/methods
;
Female
;
Humans
;
*Hypnotics and Sedatives/adverse effects
;
Male
;
*Propofol/adverse effects
;
Retrospective Studies
7.Effect of Propofol and Desflurane on Immune Cell Populations in Breast Cancer Patients: A Randomized Trial.
Jae Hee WOO ; Hee Jung BAIK ; Chi Hyo KIM ; Rack Kyung CHUNG ; Dong Yeon KIM ; Guie Yong LEE ; Eun Hee CHUN
Journal of Korean Medical Science 2015;30(10):1503-1508
Several factors can affect the perioperative immune function. We evaluated the effect of propofol and desflurane anesthesia on the surgery-induced immune perturbation in patients undergoing breast cancer surgery. The patients were randomly assigned to receive propofol (n = 20) or desflurane (n = 20) anesthesia. The total and differential white blood cell counts were determined with lymphocyte subpopulations before and 1 hr after anesthesia induction and at 24 hr postoperatively. Plasma concentrations of interleukin (IL)-2 and IL-4 were also measured. Both propofol and desflurane anesthesia preserved the IL-2/IL-4 and CD4+/CD8+ T cell ratio. Leukocytes were lower in the propofol group than in the desflurane group at 1 hr after induction (median [quartiles], 4.98 [3.87-6.31] vs. 5.84 [5.18-7.94] 10(3)/microL) and 24 hr postoperatively (6.92 [5.54-6.86] vs. 7.62 [6.22-9.21] 10(3)/microL). NK cells significantly decreased 1 hr after induction in the propofol group (0.41 [0.34-0.53] to 0.25 [0.21-0.33] 10(3)/microL), but not in the desflurane group (0.33 [0.29-0.48] to 0.38 [0.30-0.56] 10(3)/microL). Our findings indicate that both propofol and desflurane anesthesia for breast cancer surgery induce a favorable immune response in terms of preservation of IL-2/IL-4 and CD4+/CD8+ T cell ratio in the perioperative period. With respect to leukocytes and NK cells, desflurane anesthesia is associated with less adverse immune responses than propofol anesthesia during surgery for breast cancer. (Clinical trial registration at https://cris.nih.go.kr/cris number: KCT0000939)
Adolescent
;
Adult
;
Aged
;
Aged, 80 and over
;
Anesthesia/adverse effects
;
Anesthetics, Inhalation/*therapeutic use
;
Anesthetics, Intravenous/*therapeutic use
;
Breast Neoplasms/immunology/*surgery
;
*CD4-CD8 Ratio
;
Female
;
Humans
;
Interleukin-2/blood
;
Interleukin-4/blood
;
Isoflurane/*analogs & derivatives/therapeutic use
;
Middle Aged
;
Postoperative Period
;
Propofol/*therapeutic use
;
Young Adult
8.Is propofol safe when administered to cirrhotic patients during sedative endoscopy?.
Sang Jun SUH ; Hyung Joon YIM ; Eileen L YOON ; Beom Jae LEE ; Jong Jin HYUN ; Sung Woo JUNG ; Ja Seol KOO ; Ji Hoon KIM ; Kyung Jin KIM ; Rok Son CHOUNG ; Yeon Seok SEO ; Jong Eun YEON ; Soon Ho UM ; Kwan Soo BYUN ; Sang Woo LEE ; Jai Hyun CHOI ; Ho Sang RYU
The Korean Journal of Internal Medicine 2014;29(1):57-65
BACKGROUND/AIMS: In patients with liver cirrhosis, drugs acting on the central nervous system can lead to hepatic encephalopathy and the effects may be prolonged. Recently, misuse of propofol has been reported and the associated risk of death have become an issue. Propofol is commonly used during sedative endoscopy; therefore, its safety in high-risk groups must be further investigated. We performed a pilot study of the safety and efficacy of propofol during endoscopy in Korean patients with cirrhosis. METHODS: Upper gastrointestinal endoscopy was performed under sedation with propofol along with careful monitoring in 20 patients with liver cirrhosis and 20 control subjects. The presence or development of hepatic encephalopathy was assessed using the number connection test and neurologic examination. RESULTS: Neither respiratory depression nor clinically significant hypotension were observed. Immediate postanesthetic recovery at 5 and 10 minutes after the procedure was delayed in the cirrhotic patients compared with the control group; however, at 30 minutes, the postanesthetic recovery was similar in both groups. Baseline psychomotor performance was more impaired in cirrhotic patients, but propofol was not associated with deteriorated psychomotor function even in cirrhotic patients with a minimal hepatic encephalopathy. CONCLUSIONS: Sedation with propofol was well tolerated in cirrhotic patients. No newly developed hepatic encephalopathy was observed.
Adult
;
*Endoscopy, Gastrointestinal
;
Female
;
Hepatic Encephalopathy/chemically induced
;
Humans
;
Hypnotics and Sedatives/*adverse effects
;
*Liver Cirrhosis
;
Male
;
Middle Aged
;
Propofol/*adverse effects
;
Republic of Korea
9.Bispectral Index Monitoring during Anesthesiologist-Directed Propofol and Remifentanil Sedation for Endoscopic Submucosal Dissection: A Prospective Randomized Controlled Trial.
Woo Young PARK ; Yang Sik SHIN ; Sang Kil LEE ; So Yeon KIM ; Tai Kyung LEE ; Yong Seon CHOI
Yonsei Medical Journal 2014;55(5):1421-1429
PURPOSE: Endoscopic submucosal dissection (ESD) is a technically difficult and lengthy procedure requiring optimal depth of sedation. The bispectral index (BIS) monitor is a non-invasive tool that objectively evaluates the depth of sedation. The purpose of this prospective randomized controlled trial was to evaluate whether BIS guided sedation with propofol and remifentanil could reduce the number of patients requiring rescue propofol, and thus reduce the incidence of sedation- and/or procedure-related complications. MATERIALS AND METHODS: A total of 180 patients who underwent the ESD procedure for gastric adenoma or early gastric cancer were randomized to two groups. The control group (n=90) was monitored by the Modified Observer's Assessment of Alertness and Sedation scale and the BIS group (n=90) was monitored using BIS. The total doses of propofol and remifentanil, the need for rescue propofol, and the rates of complications were recorded. RESULTS: The number of patients who needed rescue propofol during the procedure was significantly higher in the control group than the BIS group (47.8% vs. 30.0%, p=0.014). There were no significant differences in the incidence of sedation- and/or procedure-related complications. CONCLUSION: BIS-guided propofol infusion combined with remifentanil reduced the number of patients requiring rescue propofol in ESD procedures. However, this finding did not lead to clinical benefits and thus BIS monitoring is of limited use during anesthesiologist-directed sedation.
Aged
;
Anesthetics, Intravenous/*administration & dosage/therapeutic use
;
*Consciousness Monitors
;
Endoscopy/methods
;
Female
;
Humans
;
Intraoperative Complications/*prevention & control
;
Male
;
Middle Aged
;
Monitoring, Physiologic/methods
;
Piperidines/*administration & dosage/adverse effects/therapeutic use
;
Propofol/*administration & dosage/adverse effects/therapeutic use
10.Effect of transcutaneous acupoint electrical stimulation on stress in brain surgery with propofol target controlled infusion general anesthesia.
Qun WU ; Yun-Chang MO ; Lu-Ping HUANG ; Liang LUO ; Jun-Lu WANG
Chinese Journal of Integrated Traditional and Western Medicine 2013;33(12):1621-1625
OBJECTIVETo study the effect of transcutaneous acupoint electrical stimulation (TAES) on stress who received propofol target controlled infusion (TCI) general anesthesia in brain surgery.
METHODSTotally 40 neurosurgical patients of I-II grade (ASA grading) in our hospital were randomly divided into the TAES group (T group) and the control group (C group), 20 in each group. All patients received intravenous anesthesia by propofol TCI. The TAES intervention was adopted in those of C group. Electrodes were only applied to corresponding acupoints without electric stimulation. The arterial blood was withdrawn before TAES (T0), before anesthesia (T1), before cutting (T2), at 60 min after encephalic incision (T3), immediately after incisions suture (T4), at about 10 min after removing tracheal catheters (T5) to detect beta-endorphin (beta-EP), cortisol (COR), adrenalin (E), blood sugar (Glu). The heart rate (HR) and mean arterial pressure (MAP) were recorded. The total time of surgery, anesthesia, total infusion amount, blood lost amount, and urine amount were recorded.
RESULTSIn both groups, HR, MAP, COR, and E at T2 were lower than at T0 significantly (P < 0.05). beta-EP in group C at T2 was lower than at T0 significantly (P < 0.05). HR, MAP, COR in group C at T3 were higher than at T0 significantly (P < 0.05). HR, MAP, E, and Glu in group C at T4 and T5 were higher than at T0 significantly (P < 0.05). beta-EP in group T at T1 and T3 were higher than at T0 significantly (P < 0.05). HR, COR, E, Glu, and beta-EP in group T at T4 and T5 were higher than at T0 significantly (P < 0.05). Between groups, comparing with the time point T0, the amplitude of variation of MAP, COR, and E at T2 in group C were significantly less (P < 0.05); the amplitude of variation of HR, MAP, and COR at T3 in group C were less significantly, when compared with the time point T0 (P < 0.05); the amplitude of variation of HR, MAP, COR, E, and Glu at T4 and T5 in group C were less significantly, when compared with the time point T0 (P < 0.05). When comparing the two groups, the amplitude of variation of beta-EP at time points of T1, T3, T4, and T5 in group T were larger than at T0 in group C (P < 0.05).
CONCLUSIONTAES could reduce stress and stabilize the internal environment when used in brain surgery with propofol TCI general anesthesia.
Acupuncture Points ; Adult ; Aged ; Craniotomy ; adverse effects ; Female ; Humans ; Intraoperative Period ; Male ; Middle Aged ; Propofol ; administration & dosage ; Stress Disorders, Post-Traumatic ; Transcutaneous Electric Nerve Stimulation

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